Skip to main content
Top
Published in: International Journal of Material Forming 1/2017

12-08-2015 | Thematic Issue: Computational Methods in Manufacturing

Investigation of the effect of temper rolling on the texture evolution and mechanical behavior of IF steels using multiscale simulation

Authors: Komi Soho, Xavier Lemoine, Farid Abed-Meraim, Hamid Zahrouni

Published in: International Journal of Material Forming | Issue 1/2017

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The main objective of this study is to simulate texture and deformation during the temper-rolling process. To this end, a rate-independent crystal plasticity model, based on the self-consistent scale-transition scheme, is adopted to predict texture evolution and deformation heterogeneity during temper-rolling process. For computational efficiency, a decoupled analysis is considered between the polycrystalline plasticity model and the finite element analysis for the temper rolling. The elasto-plastic finite element analysis is first carried out to determine the history of velocity gradient during the numerical simulation of temper rolling. The thus calculated velocity gradient history is subsequently applied to the polycrystalline plasticity model. By following some appropriately selected strain paths (i.e., streamlines) along the rolling process, one can predict the texture evolution of the material at the half thickness of the sheet metal as well as other parameters related to its microstructure. The numerical results obtained by the proposed strategy are compared with experimental data in the case of IF steels.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Poortmans S, Duchêne L, Habraken AM, Verlinden B (2009) Modelling compression tests on aluminium produced by equal channel angular extrusion. Acta Mater 57:1821–1830CrossRef Poortmans S, Duchêne L, Habraken AM, Verlinden B (2009) Modelling compression tests on aluminium produced by equal channel angular extrusion. Acta Mater 57:1821–1830CrossRef
2.
go back to reference Gawad J, Van Bael A, Eyckens P, Samaey G, Van Houtte P, Roose D (2013) Hierarchical multi-scale modeling of texture induced plastic anisotropy in sheet forming. Comput Mater Sci 66:65–83CrossRef Gawad J, Van Bael A, Eyckens P, Samaey G, Van Houtte P, Roose D (2013) Hierarchical multi-scale modeling of texture induced plastic anisotropy in sheet forming. Comput Mater Sci 66:65–83CrossRef
3.
go back to reference Van Houtte P, Gawad J, Eyckens P, Van Bael P, Samaey G, Roose D (2012) Multi-scale modelling of the development of heterogeneous distributions of stress, strain, deformation texture and anisotropy in sheet metal forming. Procedia IUTAM 3:67–75CrossRef Van Houtte P, Gawad J, Eyckens P, Van Bael P, Samaey G, Roose D (2012) Multi-scale modelling of the development of heterogeneous distributions of stress, strain, deformation texture and anisotropy in sheet metal forming. Procedia IUTAM 3:67–75CrossRef
4.
go back to reference Van Houtte P, Kanjarla AK, Van Bael A, Seefeldt M, Delannay L (2006) Multiscale modelling of the plastic anisotropy and deformation texture of polycrystalline materials. Eur J Mech - A/Solids 25:634–648MathSciNetCrossRefMATH Van Houtte P, Kanjarla AK, Van Bael A, Seefeldt M, Delannay L (2006) Multiscale modelling of the plastic anisotropy and deformation texture of polycrystalline materials. Eur J Mech - A/Solids 25:634–648MathSciNetCrossRefMATH
5.
go back to reference Tóth LS, Molinari A (1994) Tuning a self consistent viscoplastic model by finite element results—II. Application to torsion textures. Acta Metall Mater 42:2459–2466CrossRef Tóth LS, Molinari A (1994) Tuning a self consistent viscoplastic model by finite element results—II. Application to torsion textures. Acta Metall Mater 42:2459–2466CrossRef
6.
go back to reference Peirce D, Asaro RJ, Needleman A (1982) An analysis of nonuniform and localized deformation. Acta Metall 30:1087–1119CrossRef Peirce D, Asaro RJ, Needleman A (1982) An analysis of nonuniform and localized deformation. Acta Metall 30:1087–1119CrossRef
7.
go back to reference Roters F, Eisenlohr P, Hantcherli L, Tjahjanto DD, Bieler TR, Raabe D (2010) Overview of constitutive laws, kinematics, homogenization and multiscale methods in crystal plasticity finite-element modeling : Theory, experiments, applications. Acta Mater 58:1152–1211CrossRef Roters F, Eisenlohr P, Hantcherli L, Tjahjanto DD, Bieler TR, Raabe D (2010) Overview of constitutive laws, kinematics, homogenization and multiscale methods in crystal plasticity finite-element modeling : Theory, experiments, applications. Acta Mater 58:1152–1211CrossRef
8.
go back to reference Boudifa M, Saanouni K, Chaboche J (2009) A micromechanical model for inelastic ductile damage prediction in polycrystalline metals for metal forming. Int J Mech Sci 51:453–464CrossRef Boudifa M, Saanouni K, Chaboche J (2009) A micromechanical model for inelastic ductile damage prediction in polycrystalline metals for metal forming. Int J Mech Sci 51:453–464CrossRef
9.
go back to reference Zamiri AR, Pourboghrat F (2010) A novel yield function for single crystals based on combined constraints optimization. Int J Plast 26:731–746CrossRefMATH Zamiri AR, Pourboghrat F (2010) A novel yield function for single crystals based on combined constraints optimization. Int J Plast 26:731–746CrossRefMATH
10.
go back to reference Zamiri A, Pourboghrat F (2007) An effective computational algorithm for rate-independent crystal plasticity based on a single crystal yield surface with an application to tube hydroforming. Int J Plast 23:1126–1147CrossRefMATH Zamiri A, Pourboghrat F (2007) An effective computational algorithm for rate-independent crystal plasticity based on a single crystal yield surface with an application to tube hydroforming. Int J Plast 23:1126–1147CrossRefMATH
11.
go back to reference Zhang H, Dong X, Wang Q, Zeng Z (2012) An effective semi-implicit integration scheme for rate dependent crystal plasticity using explicit finite element codes. Comput Mater Sci 54:208–218CrossRef Zhang H, Dong X, Wang Q, Zeng Z (2012) An effective semi-implicit integration scheme for rate dependent crystal plasticity using explicit finite element codes. Comput Mater Sci 54:208–218CrossRef
12.
go back to reference Li HW, Yang H, Sun ZC (2008) A robust integration algorithm for implementing rate dependent crystal plasticity into explicit finite element method. Int J Plast 24:267–288CrossRef Li HW, Yang H, Sun ZC (2008) A robust integration algorithm for implementing rate dependent crystal plasticity into explicit finite element method. Int J Plast 24:267–288CrossRef
13.
go back to reference Li DY, Peng YH, Zhang SR, Liu SR (2009) Numerical simulation of sheet metal stamping by using ODF data. Int J Mech Sci 51:41–51CrossRefMATH Li DY, Peng YH, Zhang SR, Liu SR (2009) Numerical simulation of sheet metal stamping by using ODF data. Int J Mech Sci 51:41–51CrossRefMATH
14.
go back to reference Guan Y, Pourboghrat F (2006) Finite element modeling of tube hydroforming of polycrystalline aluminum alloy extrusions. Int J Plast 22:2366–2393CrossRefMATH Guan Y, Pourboghrat F (2006) Finite element modeling of tube hydroforming of polycrystalline aluminum alloy extrusions. Int J Plast 22:2366–2393CrossRefMATH
15.
go back to reference Segurado J, Lebensohn RA, Llorca J, Tomé CN (2012) Multiscale modeling of plasticity based on embedding the viscoplastic self-consistent formulation in implicit finite elements. Int J Plast 28:124–140CrossRef Segurado J, Lebensohn RA, Llorca J, Tomé CN (2012) Multiscale modeling of plasticity based on embedding the viscoplastic self-consistent formulation in implicit finite elements. Int J Plast 28:124–140CrossRef
16.
go back to reference Mathur KK, Dawson PR (1989) On modeling the development of crystallographic texture in bulk forming processes. Int J Plast 5:67–94CrossRef Mathur KK, Dawson PR (1989) On modeling the development of crystallographic texture in bulk forming processes. Int J Plast 5:67–94CrossRef
17.
go back to reference Habraken AM, Duchêne L (2004) Anisotropic elasto-plastic finite element analysis using a stress–strain interpolation method based on a polycrystalline model. Int J Plast 20:1525–1560CrossRefMATH Habraken AM, Duchêne L (2004) Anisotropic elasto-plastic finite element analysis using a stress–strain interpolation method based on a polycrystalline model. Int J Plast 20:1525–1560CrossRefMATH
18.
go back to reference Peirce D, Asaro RJ, Needleman A, Park A (1983) Material rate dependence and localized deformation in crystalline solids. Acta Metall 31:1951–1976CrossRef Peirce D, Asaro RJ, Needleman A, Park A (1983) Material rate dependence and localized deformation in crystalline solids. Acta Metall 31:1951–1976CrossRef
19.
go back to reference Asaro RJ, Needleman A (1984) Texture development and strain hardening in rate dependent polycrystals. Acta Metall 33:923–953CrossRef Asaro RJ, Needleman A (1984) Texture development and strain hardening in rate dependent polycrystals. Acta Metall 33:923–953CrossRef
20.
go back to reference Kalidindi SR, Anand L (1992) An approximate procedure for predicting the evolution of crystallographic texture in bulk deformation processing of fcc metals. Int J Mech Sci 34:309–329CrossRef Kalidindi SR, Anand L (1992) An approximate procedure for predicting the evolution of crystallographic texture in bulk deformation processing of fcc metals. Int J Mech Sci 34:309–329CrossRef
21.
go back to reference Jung K-H, Kim D-K, Im Y-T, Lee Y-S (2013) Prediction of the effects of hardening and texture heterogeneities by finite element analysis based on the Taylor model. Int J Plast 42:120–140CrossRef Jung K-H, Kim D-K, Im Y-T, Lee Y-S (2013) Prediction of the effects of hardening and texture heterogeneities by finite element analysis based on the Taylor model. Int J Plast 42:120–140CrossRef
22.
go back to reference Franciosi P, Zaoui A (1991) Crystal hardening and the issue of uniqueness. Int J Plast 7:295–311CrossRefMATH Franciosi P, Zaoui A (1991) Crystal hardening and the issue of uniqueness. Int J Plast 7:295–311CrossRefMATH
23.
24.
go back to reference Busso EP, Cailletaud G (2005) On the selection of active slip systems in crystal plasticity. Int J Plast 21:2212–2231CrossRefMATH Busso EP, Cailletaud G (2005) On the selection of active slip systems in crystal plasticity. Int J Plast 21:2212–2231CrossRefMATH
25.
go back to reference Arul Kumar M, Mahesh S (2012) Banding in single crystals during plastic deformation. Int J Plast 36:15–33CrossRef Arul Kumar M, Mahesh S (2012) Banding in single crystals during plastic deformation. Int J Plast 36:15–33CrossRef
26.
go back to reference Marin EB, Dawson PR (1998) Elastoplastic finite element analyses of metal deformations using polycrystal constitutive models. Comput Methods Appl Mech Eng 165:23–41CrossRefMATH Marin EB, Dawson PR (1998) Elastoplastic finite element analyses of metal deformations using polycrystal constitutive models. Comput Methods Appl Mech Eng 165:23–41CrossRefMATH
27.
go back to reference Jafarlou D, Hassan M, Mardi NA, Zalnezhad E (2014) Influence of Temper Rolling on Tensile Property of Low Carbon Steel Sheets by Application of Hill 48 Anisotropic Yield Criterion. Procedia Eng 81:1222–1227CrossRef Jafarlou D, Hassan M, Mardi NA, Zalnezhad E (2014) Influence of Temper Rolling on Tensile Property of Low Carbon Steel Sheets by Application of Hill 48 Anisotropic Yield Criterion. Procedia Eng 81:1222–1227CrossRef
28.
go back to reference Yoshida F, Kaneda Y, Yamamoto S (2008) A plasticity model describing yield-point phenomena of steels and its application to FE simulation of temper rolling. Int J Plast 24:1792–1818CrossRefMATH Yoshida F, Kaneda Y, Yamamoto S (2008) A plasticity model describing yield-point phenomena of steels and its application to FE simulation of temper rolling. Int J Plast 24:1792–1818CrossRefMATH
29.
go back to reference Roberts WL (1983) Cold Rolling of Steels. Marcel Dekker, New York Roberts WL (1983) Cold Rolling of Steels. Marcel Dekker, New York
30.
go back to reference Lipinski P, Berveiller M (1989) Elastoplasticity of micro-inhomogeneous metals at large strains. Int J Plast 5:149–172CrossRefMATH Lipinski P, Berveiller M (1989) Elastoplasticity of micro-inhomogeneous metals at large strains. Int J Plast 5:149–172CrossRefMATH
31.
go back to reference Franz G, Abed-Meraim F, Lorrain J-P, Ben Zineb T, Lemoine X, Berveiller M (2009) Ellipticity loss analysis for tangent moduli deduced from a large strain elastic–plastic self-consistent model. Int J Plast 25:205–238CrossRefMATH Franz G, Abed-Meraim F, Lorrain J-P, Ben Zineb T, Lemoine X, Berveiller M (2009) Ellipticity loss analysis for tangent moduli deduced from a large strain elastic–plastic self-consistent model. Int J Plast 25:205–238CrossRefMATH
32.
go back to reference Franz G, Abed-meraim F, Berveiller M (2013) Strain localization analysis for single crystals and polycrystals : Towards microstructure-ductility linkage. Int J Plast 48:1–33CrossRef Franz G, Abed-meraim F, Berveiller M (2013) Strain localization analysis for single crystals and polycrystals : Towards microstructure-ductility linkage. Int J Plast 48:1–33CrossRef
33.
go back to reference Iwakuma T, Nemat-Nasser S (1984) Finite elastic–plastic deformation of polycristalline metals. Proc R Soc L A 394:87–119CrossRefMATH Iwakuma T, Nemat-Nasser S (1984) Finite elastic–plastic deformation of polycristalline metals. Proc R Soc L A 394:87–119CrossRefMATH
34.
go back to reference Lipinski P, Berveiller M, Reubrez E, Morreale J (1995) Transition theories of elastic–plastic deformation of metallic polycrystals. Arch Appl Mech 65:291–311CrossRefMATH Lipinski P, Berveiller M, Reubrez E, Morreale J (1995) Transition theories of elastic–plastic deformation of metallic polycrystals. Arch Appl Mech 65:291–311CrossRefMATH
35.
go back to reference Berveiller M, Fassi-Fehri O, Hihi A (1987) The problem of two plastic and heterogeneous inclusions in an anisotropic medium. Int J Eng Sci 25:691–709CrossRefMATH Berveiller M, Fassi-Fehri O, Hihi A (1987) The problem of two plastic and heterogeneous inclusions in an anisotropic medium. Int J Eng Sci 25:691–709CrossRefMATH
36.
go back to reference Eshelby J (1957) The determination of the elastic field of an ellipsoidal inclusion and related problems. Proc R Soc L A 241:376–396MathSciNetCrossRefMATH Eshelby J (1957) The determination of the elastic field of an ellipsoidal inclusion and related problems. Proc R Soc L A 241:376–396MathSciNetCrossRefMATH
37.
go back to reference Hill R (1965) Continuum micro-mechanics of elastoplastic polycrystals. J Mech Phys Solids 13:89–101CrossRefMATH Hill R (1965) Continuum micro-mechanics of elastoplastic polycrystals. J Mech Phys Solids 13:89–101CrossRefMATH
38.
go back to reference Nesterova E, Bacroix B, Teodosiu C (2001) Experimental observation of microstructure evolution under strain-path changes in low-carbon IF steel. Mater Sci Eng A 309–310:495–499CrossRef Nesterova E, Bacroix B, Teodosiu C (2001) Experimental observation of microstructure evolution under strain-path changes in low-carbon IF steel. Mater Sci Eng A 309–310:495–499CrossRef
39.
go back to reference Bunge H (1969) Mathematische Methoden der Texturanalyse. Akademie-Verlag, Berlin Bunge H (1969) Mathematische Methoden der Texturanalyse. Akademie-Verlag, Berlin
40.
go back to reference Bunge H (1982) Texture Analysis in Materials Science. Butterwort, London Bunge H (1982) Texture Analysis in Materials Science. Butterwort, London
41.
go back to reference François M, Sprauel J, Lebrun J (1991) Construction of a pseudo-material representation of a real textured material from ODF or direct pole figures. Textures Microstruct 14–18:169–174CrossRef François M, Sprauel J, Lebrun J (1991) Construction of a pseudo-material representation of a real textured material from ODF or direct pole figures. Textures Microstruct 14–18:169–174CrossRef
42.
go back to reference Bachmann F, Hielscher R, Schaeben H (2010) Texture Analysis with MTEX – Free and Open Source Software Toolbox. Solid State Phenom 160:63–68CrossRef Bachmann F, Hielscher R, Schaeben H (2010) Texture Analysis with MTEX – Free and Open Source Software Toolbox. Solid State Phenom 160:63–68CrossRef
43.
go back to reference Hacquin A, Montmitonnet P, Guillerault J-P (1996) A steady state thermo-elastoviscoplastic finite element model of rolling with coupled thermo-elastic roll deformation. J Mater Process Technol 60:109–116CrossRefMATH Hacquin A, Montmitonnet P, Guillerault J-P (1996) A steady state thermo-elastoviscoplastic finite element model of rolling with coupled thermo-elastic roll deformation. J Mater Process Technol 60:109–116CrossRefMATH
44.
go back to reference Abdelkhalek S, Montmitonnet P, Legrand N, Buessler P (2008) Manifested flatness predictions in thin strip cold rolling. Int J Mater Form 1:339–342CrossRef Abdelkhalek S, Montmitonnet P, Legrand N, Buessler P (2008) Manifested flatness predictions in thin strip cold rolling. Int J Mater Form 1:339–342CrossRef
45.
go back to reference Abdelkhalek S, Zahrouni H, Potier-Ferry M, Legrand N, Montmitonnet P, Buessler P (2009) Coupled and uncoupled approaches for thin cold rolled strip buckling prediction. Int J Mater Form 2:833–836CrossRef Abdelkhalek S, Zahrouni H, Potier-Ferry M, Legrand N, Montmitonnet P, Buessler P (2009) Coupled and uncoupled approaches for thin cold rolled strip buckling prediction. Int J Mater Form 2:833–836CrossRef
46.
go back to reference Nakhoul R, Montmitonnet P, Legrand N (2014) Manifested flatness defect prediction in cold rolling of thin strips. Int J Mater Form 8:283–292CrossRef Nakhoul R, Montmitonnet P, Legrand N (2014) Manifested flatness defect prediction in cold rolling of thin strips. Int J Mater Form 8:283–292CrossRef
47.
go back to reference Kang HG, Kim JK, Huh MY, Engler O (2007) A combined texture and FEM study of strain states during roll-cladding of five-ply stainless steel/aluminum composites. Mater Sci Eng A 452–453:347–358CrossRef Kang HG, Kim JK, Huh MY, Engler O (2007) A combined texture and FEM study of strain states during roll-cladding of five-ply stainless steel/aluminum composites. Mater Sci Eng A 452–453:347–358CrossRef
48.
go back to reference Kim E-Y, Cho J, Kim H-W, Choi S-H (2011) Evolution of deformation texture in Al/Al–Mg/Al composite sheets during cold-roll cladding. Mater Sci Eng A 530:244–252CrossRef Kim E-Y, Cho J, Kim H-W, Choi S-H (2011) Evolution of deformation texture in Al/Al–Mg/Al composite sheets during cold-roll cladding. Mater Sci Eng A 530:244–252CrossRef
49.
go back to reference Decroos K, Sidor J, Seefeldt M (2013) A New Analytical Approach for the Velocity Field in Rolling Processes and Its Application in Through-Thickness Texture Prediction. Metall Mater Trans A 45:948–961CrossRef Decroos K, Sidor J, Seefeldt M (2013) A New Analytical Approach for the Velocity Field in Rolling Processes and Its Application in Through-Thickness Texture Prediction. Metall Mater Trans A 45:948–961CrossRef
50.
go back to reference Engler O, Huh MY, Tome CN (2000) A Study of Through-Thickness Texture Gradients in Rolled. Metall Mater Trans A 31:2299–2315CrossRef Engler O, Huh MY, Tome CN (2000) A Study of Through-Thickness Texture Gradients in Rolled. Metall Mater Trans A 31:2299–2315CrossRef
51.
go back to reference Lee CS, Duggan BJ (1991) A simple theory for the development of inhomogeneous rolling textures. Metall Trans A 22:2637–2643CrossRef Lee CS, Duggan BJ (1991) A simple theory for the development of inhomogeneous rolling textures. Metall Trans A 22:2637–2643CrossRef
52.
go back to reference Nicaise N, Berbenni S, Wagner F, Berveiller M, Lemoine X (2011) Coupled effects of grain size distributions and crystallographic textures on the plastic behaviour of IF steels. Int J Plast 27:232–249CrossRef Nicaise N, Berbenni S, Wagner F, Berveiller M, Lemoine X (2011) Coupled effects of grain size distributions and crystallographic textures on the plastic behaviour of IF steels. Int J Plast 27:232–249CrossRef
53.
go back to reference Van Houtte P, Li S, Seefeldt M, Delannay L (2005) Deformation texture prediction: from the Taylor model to the advanced Lamel model. Int J Plast 21:589–624CrossRefMATH Van Houtte P, Li S, Seefeldt M, Delannay L (2005) Deformation texture prediction: from the Taylor model to the advanced Lamel model. Int J Plast 21:589–624CrossRefMATH
54.
go back to reference Bachu V, Kalidindi SR (1988) On the accuracy of the predictions of texture evolution by the finite element technique for fcc polycristals. Mater Sci Eng A 257:108–117CrossRef Bachu V, Kalidindi SR (1988) On the accuracy of the predictions of texture evolution by the finite element technique for fcc polycristals. Mater Sci Eng A 257:108–117CrossRef
55.
go back to reference Franz G, Abed-Meraim F, Ben Zineb T, Lemoine X, Berveiller M (2009) Role of intragranular microstructure development in the macroscopic behavior of multiphase steels in the context of changing strain paths. Mater Sci Eng A 517:300–311CrossRef Franz G, Abed-Meraim F, Ben Zineb T, Lemoine X, Berveiller M (2009) Role of intragranular microstructure development in the macroscopic behavior of multiphase steels in the context of changing strain paths. Mater Sci Eng A 517:300–311CrossRef
56.
go back to reference Franz G, Abed-Meraim F, Ben Zineb T, Lemoine X, Berveiller M (2011) Impact of intragranular microstructure development on ductility limits of multiphase steels. Mater Sci Eng A 528:3777–3785CrossRef Franz G, Abed-Meraim F, Ben Zineb T, Lemoine X, Berveiller M (2011) Impact of intragranular microstructure development on ductility limits of multiphase steels. Mater Sci Eng A 528:3777–3785CrossRef
57.
go back to reference Kanjarla AK, Van Houtte P, Delannay L (2010) Assessment of plastic heterogeneity in grain interaction models using crystal plasticity finite element method. Int J Plast 26:1220–1233CrossRefMATH Kanjarla AK, Van Houtte P, Delannay L (2010) Assessment of plastic heterogeneity in grain interaction models using crystal plasticity finite element method. Int J Plast 26:1220–1233CrossRefMATH
58.
go back to reference Peeters B (2002) Multiscale modelling of the induced plastic anisotropy in IF steel during sheet metal forming. Katholieke Universiteit Leuven Peeters B (2002) Multiscale modelling of the induced plastic anisotropy in IF steel during sheet metal forming. Katholieke Universiteit Leuven
59.
go back to reference Peeters B, Seefeldt M, Teodosiu C, Kalidindi SR, Van Houtte P, Aernoudt E (2001) Work-hardening/softening behaviour of b.c.c. polycrystals during changing strain paths: I. An integrated model based on substructure and texture evolution, and its prediction of the stress–strain behaviour of an IF steel during two-stage strain paths. Acta Mater 49:1607–1619CrossRef Peeters B, Seefeldt M, Teodosiu C, Kalidindi SR, Van Houtte P, Aernoudt E (2001) Work-hardening/softening behaviour of b.c.c. polycrystals during changing strain paths: I. An integrated model based on substructure and texture evolution, and its prediction of the stress–strain behaviour of an IF steel during two-stage strain paths. Acta Mater 49:1607–1619CrossRef
60.
go back to reference Peeters B, Bacroix B, Teodosiu C, Van Houtte P, Aernoudt E (2001) Work-hardening/softening behaviour of b.c.c. polycrystals during changing strain: II. TEM observations of dislocation sheets in an IF steel during two-stage strain paths and their representation in terms of dislocation densitiesActa Mater 49:1621–1632 Peeters B, Bacroix B, Teodosiu C, Van Houtte P, Aernoudt E (2001) Work-hardening/softening behaviour of b.c.c. polycrystals during changing strain: II. TEM observations of dislocation sheets in an IF steel during two-stage strain paths and their representation in terms of dislocation densitiesActa Mater 49:1621–1632
61.
go back to reference Teodosiu C, Hu Z (1995) Evolution of the intragranular microstructure at moderate and large strains. In: Shen SF, Dawson PR (eds.) Proc. of Numiform’95, Simulation of Materials Processing: Theory, Methods and Applications, Balkema, Rotterdam, pp 173–182 Teodosiu C, Hu Z (1995) Evolution of the intragranular microstructure at moderate and large strains. In: Shen SF, Dawson PR (eds.) Proc. of Numiform’95, Simulation of Materials Processing: Theory, Methods and Applications, Balkema, Rotterdam, pp 173–182
62.
go back to reference Hiwatashi S, Van Bael A, Van Houtte P, Teodosiu C (1997) Modelling of plastic anisotropy based on texture and dislocation structure. Comput Mater Sci 9:274–284CrossRefMATH Hiwatashi S, Van Bael A, Van Houtte P, Teodosiu C (1997) Modelling of plastic anisotropy based on texture and dislocation structure. Comput Mater Sci 9:274–284CrossRefMATH
Metadata
Title
Investigation of the effect of temper rolling on the texture evolution and mechanical behavior of IF steels using multiscale simulation
Authors
Komi Soho
Xavier Lemoine
Farid Abed-Meraim
Hamid Zahrouni
Publication date
12-08-2015
Publisher
Springer Paris
Published in
International Journal of Material Forming / Issue 1/2017
Print ISSN: 1960-6206
Electronic ISSN: 1960-6214
DOI
https://doi.org/10.1007/s12289-015-1257-4

Other articles of this Issue 1/2017

International Journal of Material Forming 1/2017 Go to the issue

Thematic Issue: Computational Methods in Manufacturing

On the numerical simulation of sheet metal blanking process

Premium Partners